2.Expression of Notch1 protein in induction of embryonicstem cells into nerve cells
Ying XIAO ; Qi WANG ; Shibo TANG ; Bing HUANG ; Shaofen LIN
Chinese Journal of Tissue Engineering Research 2008;12(25):4967-4970
BACKGROUND: Embryonic stem cells (ESCs), the seed cells of all mature cells in vivo, are useful tools for nerve transplantation and developmental gene function research. Notch1 signaling pathway is the key pathway to control the ordered neural development and differentiation of many kinds of neural cells, however, there is no report on the dynamic expression of Notch1 signal during the ESC differentiation to date. OBJECTIVE: To investigate the expression of Notch1 protein, transmembrane signal transduction molecule, during directional differentiation of embryonic stem cells into neural cells. DESIGN, TIME AND SETTING: Cell research was carried out between October 2003 and October 2004 at Zhongshan Ophthalmic Center, SUN Yat-sen University, Guangzhou, Guangdong Province, China. MATERIALS: BALB/C mouse embryonic stem cell line Ⅵ (passage 11)was obtained from experimental animal center of SUN Yat-sen University, provided by professor Huang Bing. ESC culture medium was high-glucose DMEM medium with 20% bovine serum and 106 IU/L mouse leukemia inhibitory factor. Induced differentiation medium was high-glucose DMEM medium with 20% fetal bovine.serum and 5×107 mol/L retinoid acid(RA). METHODS: Passage 11 ESCs were resuscitated and incubated by ESC culture medium in incubator at 37℃ with 5% CO2. Passage 11 ESCs were subcultured after 2 or 3 days and RA was added into medium to induce differentiation. Three time points for observation were established: induced for 1, 5 and 9 days. MAIN OUTCOME MEASURES: Morphological changes were observed under inverted phase contrast microscope, MAP-2 antigen expressed in differentiated cells was detected by immunofluorescence method. Immunocytochemistry, Western Blot, flow cytometry assay were used to investigate the Notch1 protein expression. RESULTS: ESCs presented clone-like growth. After induced by RA for 9 days, single neural network was achieved around most of the cell clusters. With the prolongation of induction, MAP-2 positive neural cells increased gradually. Almost all ESC clones expressed Notch1 protein strongly or positively, but Notehl protein expression decreased gradually after induced differentiation (P < 0.01). CONCLUSION: Notch1 signal shuts off progressively during induction of ESCs into neural cells, which suggests Notch1 may play an important role in the differentiation of ESCs into neural cells.
3.Tissue Doppler imaging in classification of fetal arrhythmias
Yujuan ZHANG ; Ying WU ; Qi LIN ; Feng SUN
Chinese Journal of Ultrasonography 2009;18(5):405-407
Objective To evaluate the diagnostic value of tissue Doppler imaging (TDI) in classification of fetal arrhythmias, and conclude characters of each type of arrhythmias by analyzing wave forms of TDI. Methods Fifty-five fetuses suffered arrhythmia were included in study group. By comparing the results with control standard(M and PW), the sensitivity, specificity and reliability of TDI in diagnosis of fetal arrhythmias was calculated. At last, the character of waves by TDI of each type of arrhythmia was concluded. Fetal kinetocardiogram was made to identify the origin of arrhythmias. All cases were asked to perform electrocardiography and echocardiography examination after birth. Results The sensitivity, specificity and reliability of TDI was 98%, 100% and 100%, respectively. The character of atrioventricular waves and kinetocardiogram of 8 types fetal arrhythmias were conclude. Conclusions TDI has great value in classification of fetal arrhythmias.
4.Epithelioid schwannoma: report of a case.
Chinese Journal of Pathology 2010;39(10):711-712
Adult
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Axilla
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Cell Transformation, Neoplastic
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pathology
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Diagnosis, Differential
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Epithelioid Cells
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metabolism
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pathology
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Fibrosarcoma
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metabolism
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pathology
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Humans
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Male
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Neurilemmoma
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metabolism
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pathology
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surgery
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Neuroblastoma
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metabolism
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pathology
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S100 Proteins
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metabolism
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Soft Tissue Neoplasms
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metabolism
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pathology
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surgery
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Vimentin
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metabolism
5.Repair of fingertip defects with lateral flaps of finger based on digital artery perforator
Haitao XIAO ; Ying CEN ; Wei LIN ; Qiang QI ; Weixin CHEN
Chinese Journal of Microsurgery 2011;34(6):444-446
ObjectiveTo analysis the clinical efficacy of using lateral homodigital flaps based on digital artery perforator to repair the fingertip defects. MethodsFrom October 2008 to August 2010,nine patients with twelve fingertip defects,including 5 thumbs,2 index fingers,3 middle fingers,2 ring fingers,underwent repair with lateral homodigital flaps based on digital artery perforator.The size of the flaps ranged from 2.7 cm× 1.4 cm to 3.1 cm× 1.8 cm.The donor site were covered by skin graft. ResultsEleven flaps survived.One case met with partial necrosis.The follow-up time ranged from 3 to 6 months(average of 4.5 months).The finges had good appearance.Ten cases had gained full postoperative sensory recovery and the two-point discrimination was 4-Smm at 3 months after operation.ConclusionUsing the flaps pedicled with digital artery perforator is a feasible solution for treatment of fingertip defects.
7.Comparative Analysis of Serological and Molecular Methods for the detection of Rice Grassy Stunt Virus
Chun-mei, ZHANG ; Qi-ying, LIN ; Lian-hui, XIE
Virologica Sinica 2000;15(4):361-366
Methods of ELISA, nonradioactive molecular hybridiz ation and RT-PCR were applied in the detection of rice grassy stunt virus (RGSV ). The detection sensitivity of indirect ELISA using antiserum against fusion p rotein GST-NC was 1 mg of infected leaves or 84 ng of purified virus. The metho d of dot hybridization using NC, a DIG-labelled DNA probe was 50 μg diseased l e aves, or 6 ng purified preparations. The detection endpoint of RT-PCR was 10 μg diseased leaves, or 2 ng purified virus preparation. Comparisons of sensitivit y and maneuverability were made among these methods.
8.Effect of 2,3,5,4′-tetrahydroxy Stilbene-2-O-β-D-glucoside on Activation of ERK in APP Transgenic Model of Alzheimer's Disease
Lan ZHANG ; Ying XING ; Cuifei YE ; Lin LI ; Qi DONG
Chinese Journal of Rehabilitation Theory and Practice 2009;15(8):723-727
Objective To investigate the deficit of extracellular-signal regulated kinase (ERK)1/2 activation in the different age of Alzheimer's disease (AD)-like animal model and the protective effect of 2,3,5,4′-tetrahydroxy stilbene-2-O-β-D-glucoside(TSG), which is the main component of Polygonum multiflorum, on ERK activation. Methods A generally accepted animal model of AD - PDAPPV717I transgenic (Tg) mouse was observed from 4 to 16 months old. Tg mice were randomly divided into 3 model groups(4, 10 and 16 months old mice)and TSG treated (at doses 120 and 240 μmol/kg/d) groups. TSG was administered to some Tg mice with an age range 4-10 months. In untreated 10 months old Tg mice, the TSG was administrated to those falling in the age range 10-16 months. For the control group we adopted the same age and background C57BL/6J mice. The ERK1/2 expression and phosphorylation were detected by Western blotting.Results In the 4-month-old PDAPPV717I Tg mice, phosphorylation of ERK1/2 decreased significantly in hippocampus and cortex compared with age matched control. In the 10-month-old Tg mice, decrease of ERK1/2 activation was aggravated in cortex but was less in hippocampus. The treatment of TSG at the doses of 120 and 240 μmol/kg for 6 months (from the age of 4 to 10 months) significantly up-regulated ERK1/2 activation in Tg mice. In the 16-month-old Tg mice, over-activation of ERK1/2 occurred in both hippocampus and cortex. The transgenic mice treated by TSG for 6 months (from the age of 10 months to 16 months) showed significant inhibition of over-activation of ERK1/2. Expression of total ERK1/2 showed no difference among control, Tg model and TSG treated groups.Conclusion PDAPPV717I transgenic mice with an age range from 4 to 16 months revealed the time-dependent deficit of ERK1/2 activation. TSG can bring the down or over activation of ERK1/2 into normal. Because ERK1/2 activation plays the crucial role in cellular signal transduction and learning-memory ability, TSG may have beneficial potential to the prevention and treatment of neurodegenerative diseases like AD.
9.Comments on development of Chinese medical constitution
Qi WANG ; Rui-Lin WANG ; Ying-Shuai LI ;
China Journal of Traditional Chinese Medicine and Pharmacy 2006;0(09):-
Constitution of TCM is based on the study of individual constitution and physical health,and it has also drawn attention from the medical profession in the world.This commentary has reviewed about the development of constitution of TCM over the past few years,summed up the past 30 years,especially analysis the new research fruits during 2005-2006,expounded the important status of Chinese medical constitution in the development of Chinese medicine and the significance in socio-economic sustainable development,and put forward the direction of development and research for Chinese medical constitution.
10.THE CHARACTERISTICS OF SOLUBILIZING ROCK PHOSPHATE BY FOUR ISOLATES OF BACTERIA AND FUNGI
Qi-Mei LIN ; Hai-Ying ZHAO ; Xiao-Rong ZHAO ;
Microbiology 1992;0(06):-
Phosphate-dissolving microorganisms are widely distributed in soil, rhizosphere and other ecological environment. Understanding the characteristics of these microorganisms in solubilizing phosphates is helpful to apply them in improving P use efficiency. The obtained results indicated that the fungi had much higher capacity to dissolve the rock than the bacteria. Existence of Fe, Al, Mg and Na in the culture media reduced the rock solubilization by the bacteria, but increased the solubilization of the fungi. The higher content of the rock in the media, the lower capacity of the rock phosphate solubilization was found. The capacity was also significantly reduced if the concentration of C material in the media was higher than 3%. It was also found that the microorganisms destroyed the rock structure. The P was more easily released from the rock at further incubation. In conclusion, there is some potential to utilize the microorganisms to activate the rock phosphate.